forked from Mirrorlandia_minetest/irrlicht
498 lines
14 KiB
C++
498 lines
14 KiB
C++
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// Copyright (C) 2013 Christian Stehno
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// This file is part of the "Irrlicht Engine".
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// For conditions of distribution and use, see copyright notice in Irrlicht.h
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#include "CWGLManager.h"
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#ifdef _IRR_COMPILE_WITH_WGL_MANAGER_
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#include "os.h"
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#include <GL/gl.h>
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#include "wglext.h"
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#ifdef _MSC_VER
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#pragma comment(lib, "OpenGL32.lib")
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#endif
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namespace irr
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{
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namespace video
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{
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CWGLManager::CWGLManager()
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: PrimaryContext(SExposedVideoData(0)), PixelFormat(0)
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{
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#ifdef _DEBUG
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setDebugName("CWGLManager");
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#endif
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}
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CWGLManager::~CWGLManager()
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{
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}
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bool CWGLManager::initialize(const SIrrlichtCreationParameters& params, const SExposedVideoData& videodata)
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{
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// store params, videoData is set later as it would be overwritten else
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Params=params;
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// Create a window to test antialiasing support
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const fschar_t* ClassName = __TEXT("CWGLManager");
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HINSTANCE lhInstance = GetModuleHandle(0);
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// Register Class
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WNDCLASSEX wcex;
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wcex.cbSize = sizeof(WNDCLASSEX);
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wcex.style = CS_HREDRAW | CS_VREDRAW;
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wcex.lpfnWndProc = (WNDPROC)DefWindowProc;
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wcex.cbClsExtra = 0;
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wcex.cbWndExtra = 0;
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wcex.hInstance = lhInstance;
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wcex.hIcon = NULL;
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wcex.hCursor = LoadCursor(NULL, IDC_ARROW);
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wcex.hbrBackground = (HBRUSH)(COLOR_WINDOW+1);
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wcex.lpszMenuName = 0;
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wcex.lpszClassName = ClassName;
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wcex.hIconSm = 0;
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wcex.hIcon = 0;
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RegisterClassEx(&wcex);
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RECT clientSize;
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clientSize.top = 0;
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clientSize.left = 0;
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clientSize.right = Params.WindowSize.Width;
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clientSize.bottom = Params.WindowSize.Height;
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DWORD style = WS_POPUP;
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if (!Params.Fullscreen)
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style = WS_SYSMENU | WS_BORDER | WS_CAPTION | WS_CLIPCHILDREN | WS_CLIPSIBLINGS;
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AdjustWindowRect(&clientSize, style, FALSE);
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const s32 realWidth = clientSize.right - clientSize.left;
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const s32 realHeight = clientSize.bottom - clientSize.top;
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const s32 windowLeft = (GetSystemMetrics(SM_CXSCREEN) - realWidth) / 2;
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const s32 windowTop = (GetSystemMetrics(SM_CYSCREEN) - realHeight) / 2;
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HWND temporary_wnd=CreateWindow(ClassName, __TEXT(""), style, windowLeft,
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windowTop, realWidth, realHeight, NULL, NULL, lhInstance, NULL);
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if (!temporary_wnd)
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{
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os::Printer::log("Cannot create a temporary window.", ELL_ERROR);
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UnregisterClass(ClassName, lhInstance);
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return false;
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}
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HDC HDc = GetDC(temporary_wnd);
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// Set up pixel format descriptor with desired parameters
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PIXELFORMATDESCRIPTOR tmp_pfd = {
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sizeof(PIXELFORMATDESCRIPTOR), // Size Of This Pixel Format Descriptor
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1, // Version Number
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(DWORD)(PFD_DRAW_TO_WINDOW | // Format Must Support Window
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PFD_SUPPORT_OPENGL | // Format Must Support OpenGL
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(Params.Doublebuffer?PFD_DOUBLEBUFFER:0) | // Must Support Double Buffering
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(Params.Stereobuffer?PFD_STEREO:0)), // Must Support Stereo Buffer
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PFD_TYPE_RGBA, // Request An RGBA Format
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Params.Bits, // Select Our Color Depth
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0, 0, 0, 0, 0, 0, // Color Bits Ignored
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0, // No Alpha Buffer
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0, // Shift Bit Ignored
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0, // No Accumulation Buffer
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0, 0, 0, 0, // Accumulation Bits Ignored
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Params.ZBufferBits, // Z-Buffer (Depth Buffer)
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BYTE(Params.Stencilbuffer ? 1 : 0), // Stencil Buffer Depth
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0, // No Auxiliary Buffer
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PFD_MAIN_PLANE, // Main Drawing Layer
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0, // Reserved
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0, 0, 0 // Layer Masks Ignored
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};
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pfd=tmp_pfd;
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for (u32 i=0; i<6; ++i)
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{
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if (i == 1)
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{
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if (Params.Stencilbuffer)
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{
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os::Printer::log("Cannot create a GL device with stencil buffer, disabling stencil shadows.", ELL_WARNING);
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Params.Stencilbuffer = false;
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pfd.cStencilBits = 0;
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}
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else
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continue;
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}
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else
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if (i == 2)
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{
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pfd.cDepthBits = 24;
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}
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else
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if (i == 3)
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{
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if (Params.Bits!=16)
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pfd.cDepthBits = 16;
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else
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continue;
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}
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else
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if (i == 4)
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{
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// try single buffer
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if (Params.Doublebuffer)
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pfd.dwFlags &= ~PFD_DOUBLEBUFFER;
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else
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continue;
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}
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else
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if (i == 5)
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{
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os::Printer::log("Cannot create a GL device context", "No suitable format for temporary window.", ELL_ERROR);
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ReleaseDC(temporary_wnd, HDc);
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DestroyWindow(temporary_wnd);
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UnregisterClass(ClassName, lhInstance);
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return false;
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}
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// choose pixelformat
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PixelFormat = ChoosePixelFormat(HDc, &pfd);
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if (PixelFormat)
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break;
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}
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SetPixelFormat(HDc, PixelFormat, &pfd);
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os::Printer::log("Create temporary GL rendering context", ELL_DEBUG);
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HGLRC hrc=wglCreateContext(HDc);
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if (!hrc)
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{
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os::Printer::log("Cannot create a temporary GL rendering context.", ELL_ERROR);
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ReleaseDC(temporary_wnd, HDc);
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DestroyWindow(temporary_wnd);
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UnregisterClass(ClassName, lhInstance);
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return false;
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}
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CurrentContext.OpenGLWin32.HDc = HDc;
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CurrentContext.OpenGLWin32.HRc = hrc;
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CurrentContext.OpenGLWin32.HWnd = temporary_wnd;
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if (!activateContext(CurrentContext, false))
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{
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os::Printer::log("Cannot activate a temporary GL rendering context.", ELL_ERROR);
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wglDeleteContext(hrc);
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ReleaseDC(temporary_wnd, HDc);
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DestroyWindow(temporary_wnd);
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UnregisterClass(ClassName, lhInstance);
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return false;
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}
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core::stringc wglExtensions;
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#ifdef WGL_ARB_extensions_string
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PFNWGLGETEXTENSIONSSTRINGARBPROC irrGetExtensionsString = (PFNWGLGETEXTENSIONSSTRINGARBPROC)wglGetProcAddress("wglGetExtensionsStringARB");
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if (irrGetExtensionsString)
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wglExtensions = irrGetExtensionsString(HDc);
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#elif defined(WGL_EXT_extensions_string)
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PFNWGLGETEXTENSIONSSTRINGEXTPROC irrGetExtensionsString = (PFNWGLGETEXTENSIONSSTRINGEXTPROC)wglGetProcAddress("wglGetExtensionsStringEXT");
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if (irrGetExtensionsString)
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wglExtensions = irrGetExtensionsString(HDc);
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#endif
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const bool pixel_format_supported = (wglExtensions.find("WGL_ARB_pixel_format") != -1);
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const bool multi_sample_supported = ((wglExtensions.find("WGL_ARB_multisample") != -1) ||
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(wglExtensions.find("WGL_EXT_multisample") != -1) || (wglExtensions.find("WGL_3DFX_multisample") != -1) );
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#ifdef _DEBUG
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os::Printer::log("WGL_extensions", wglExtensions);
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#endif
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#ifdef WGL_ARB_pixel_format
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PFNWGLCHOOSEPIXELFORMATARBPROC wglChoosePixelFormat_ARB = (PFNWGLCHOOSEPIXELFORMATARBPROC)wglGetProcAddress("wglChoosePixelFormatARB");
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if (pixel_format_supported && wglChoosePixelFormat_ARB)
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{
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// This value determines the number of samples used for antialiasing
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// My experience is that 8 does not show a big
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// improvement over 4, but 4 shows a big improvement
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// over 2.
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if (Params.AntiAlias > 32)
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Params.AntiAlias = 32;
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f32 fAttributes[] = {0.0, 0.0};
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s32 iAttributes[] =
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{
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WGL_DRAW_TO_WINDOW_ARB,1,
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WGL_SUPPORT_OPENGL_ARB,1,
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WGL_ACCELERATION_ARB,WGL_FULL_ACCELERATION_ARB,
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WGL_COLOR_BITS_ARB,(Params.Bits==32) ? 24 : 15,
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WGL_ALPHA_BITS_ARB,(Params.Bits==32) ? 8 : 1,
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WGL_DEPTH_BITS_ARB,Params.ZBufferBits, // 10,11
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WGL_STENCIL_BITS_ARB,Params.Stencilbuffer ? 1 : 0,
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WGL_DOUBLE_BUFFER_ARB,Params.Doublebuffer ? 1 : 0,
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WGL_STEREO_ARB,Params.Stereobuffer ? 1 : 0,
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WGL_PIXEL_TYPE_ARB, WGL_TYPE_RGBA_ARB,
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#ifdef WGL_ARB_multisample
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WGL_SAMPLES_ARB,Params.AntiAlias, // 20,21
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WGL_SAMPLE_BUFFERS_ARB, (Params.AntiAlias>0) ? 1 : 0,
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#elif defined(WGL_EXT_multisample)
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WGL_SAMPLES_EXT,AntiAlias, // 20,21
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WGL_SAMPLE_BUFFERS_EXT, (Params.AntiAlias>0) ? 1 : 0,
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#elif defined(WGL_3DFX_multisample)
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WGL_SAMPLES_3DFX,AntiAlias, // 20,21
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WGL_SAMPLE_BUFFERS_3DFX, (Params.AntiAlias>0) ? 1 : 0,
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#endif
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#ifdef WGL_ARB_framebuffer_sRGB
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WGL_FRAMEBUFFER_SRGB_CAPABLE_ARB, Params.HandleSRGB ? 1:0,
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#elif defined(WGL_EXT_framebuffer_sRGB)
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WGL_FRAMEBUFFER_SRGB_CAPABLE_EXT, Params.HandleSRGB ? 1:0,
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#endif
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// WGL_DEPTH_FLOAT_EXT, 1,
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0,0,0,0
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};
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int iAttrSize = sizeof(iAttributes)/sizeof(int);
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const bool framebuffer_srgb_supported = ((wglExtensions.find("WGL_ARB_framebuffer_sRGB") != -1) ||
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(wglExtensions.find("WGL_EXT_framebuffer_sRGB") != -1));
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if (!framebuffer_srgb_supported)
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{
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memmove(&iAttributes[24],&iAttributes[26],sizeof(int)*(iAttrSize-26));
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iAttrSize -= 2;
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}
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if (!multi_sample_supported)
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{
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memmove(&iAttributes[20],&iAttributes[24],sizeof(int)*(iAttrSize-24));
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iAttrSize -= 4;
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}
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s32 rv=0;
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// Try to get an acceptable pixel format
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do
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{
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int pixelFormat=0;
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UINT numFormats=0;
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const BOOL valid = wglChoosePixelFormat_ARB(HDc,iAttributes,fAttributes,1,&pixelFormat,&numFormats);
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if (valid && numFormats)
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rv = pixelFormat;
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else
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iAttributes[21] -= 1;
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}
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while(rv==0 && iAttributes[21]>1);
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if (rv)
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{
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PixelFormat=rv;
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Params.AntiAlias=iAttributes[21];
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}
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}
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else
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#endif
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Params.AntiAlias=0;
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// this only terminates the temporary HRc
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destroyContext();
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destroySurface();
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terminate();
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DestroyWindow(temporary_wnd);
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UnregisterClass(ClassName, lhInstance);
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// now get new window
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CurrentContext.OpenGLWin32.HWnd=videodata.OpenGLWin32.HWnd;
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// get hdc
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if (!(CurrentContext.OpenGLWin32.HDc=GetDC((HWND)videodata.OpenGLWin32.HWnd)))
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{
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os::Printer::log("Cannot create a GL device context.", ELL_ERROR);
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return false;
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}
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if (!PrimaryContext.OpenGLWin32.HWnd)
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{
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PrimaryContext.OpenGLWin32.HWnd=CurrentContext.OpenGLWin32.HWnd;
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PrimaryContext.OpenGLWin32.HDc=CurrentContext.OpenGLWin32.HDc;
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}
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return true;
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}
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void CWGLManager::terminate()
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{
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if (CurrentContext.OpenGLWin32.HDc)
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ReleaseDC((HWND)CurrentContext.OpenGLWin32.HWnd, (HDC)CurrentContext.OpenGLWin32.HDc);
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if (PrimaryContext.OpenGLWin32.HDc && PrimaryContext.OpenGLWin32.HDc == CurrentContext.OpenGLWin32.HDc)
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memset(&PrimaryContext, 0, sizeof(PrimaryContext));
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memset(&CurrentContext, 0, sizeof(CurrentContext));
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}
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bool CWGLManager::generateSurface()
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{
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HDC HDc = (HDC)CurrentContext.OpenGLWin32.HDc;
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// search for pixel format the simple way
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if (PixelFormat==0 || (!SetPixelFormat(HDc, PixelFormat, &pfd)))
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{
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for (u32 i=0; i<5; ++i)
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{
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if (i == 1)
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{
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if (Params.Stencilbuffer)
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{
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os::Printer::log("Cannot create a GL device with stencil buffer, disabling stencil shadows.", ELL_WARNING);
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Params.Stencilbuffer = false;
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pfd.cStencilBits = 0;
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}
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else
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continue;
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}
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else
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if (i == 2)
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{
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pfd.cDepthBits = 24;
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}
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if (i == 3)
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{
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if (Params.Bits!=16)
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pfd.cDepthBits = 16;
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else
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continue;
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}
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else
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if (i == 4)
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{
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os::Printer::log("Cannot create a GL device context", "No suitable format.", ELL_ERROR);
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return false;
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}
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// choose pixelformat
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PixelFormat = ChoosePixelFormat(HDc, &pfd);
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if (PixelFormat)
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break;
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}
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// set pixel format
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if (!SetPixelFormat(HDc, PixelFormat, &pfd))
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{
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os::Printer::log("Cannot set the pixel format.", ELL_ERROR);
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return false;
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}
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}
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if (pfd.cAlphaBits != 0)
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{
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if (pfd.cRedBits == 8)
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ColorFormat = ECF_A8R8G8B8;
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else
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ColorFormat = ECF_A1R5G5B5;
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}
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else
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{
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if (pfd.cRedBits == 8)
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ColorFormat = ECF_R8G8B8;
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else
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ColorFormat = ECF_R5G6B5;
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}
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os::Printer::log("Pixel Format", core::stringc(PixelFormat).c_str(), ELL_DEBUG);
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return true;
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}
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void CWGLManager::destroySurface()
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{
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}
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bool CWGLManager::generateContext()
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{
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HDC HDc=(HDC)CurrentContext.OpenGLWin32.HDc;
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HGLRC hrc;
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// create rendering context
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#ifdef WGL_ARB_create_context
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PFNWGLCREATECONTEXTATTRIBSARBPROC wglCreateContextAttribs_ARB = (PFNWGLCREATECONTEXTATTRIBSARBPROC)wglGetProcAddress("wglCreateContextAttribsARB");
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if (wglCreateContextAttribs_ARB)
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{
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// with 3.0 all available profiles should be usable, higher versions impose restrictions
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// we need at least 1.1
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const int iAttribs[] =
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{
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WGL_CONTEXT_MAJOR_VERSION_ARB, 1,
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WGL_CONTEXT_MINOR_VERSION_ARB, 1,
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// WGL_CONTEXT_FLAGS_ARB, WGL_CONTEXT_DEBUG_BIT_ARB, // enable to get a debug context (depends on driver if that does anything)
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0
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};
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hrc=wglCreateContextAttribs_ARB(HDc, 0, iAttribs);
|
||
|
}
|
||
|
else
|
||
|
#endif
|
||
|
hrc=wglCreateContext(HDc);
|
||
|
os::Printer::log("Irrlicht context");
|
||
|
|
||
|
if (!hrc)
|
||
|
{
|
||
|
os::Printer::log("Cannot create a GL rendering context.", ELL_ERROR);
|
||
|
return false;
|
||
|
}
|
||
|
|
||
|
// set exposed data
|
||
|
CurrentContext.OpenGLWin32.HRc = hrc;
|
||
|
if (!PrimaryContext.OpenGLWin32.HRc)
|
||
|
PrimaryContext.OpenGLWin32.HRc=CurrentContext.OpenGLWin32.HRc;
|
||
|
|
||
|
return true;
|
||
|
}
|
||
|
|
||
|
const SExposedVideoData& CWGLManager::getContext() const
|
||
|
{
|
||
|
return CurrentContext;
|
||
|
}
|
||
|
|
||
|
bool CWGLManager::activateContext(const SExposedVideoData& videoData, bool restorePrimaryOnZero)
|
||
|
{
|
||
|
if (videoData.OpenGLWin32.HWnd && videoData.OpenGLWin32.HDc && videoData.OpenGLWin32.HRc)
|
||
|
{
|
||
|
if (!wglMakeCurrent((HDC)videoData.OpenGLWin32.HDc, (HGLRC)videoData.OpenGLWin32.HRc))
|
||
|
{
|
||
|
os::Printer::log("Render Context switch failed.");
|
||
|
return false;
|
||
|
}
|
||
|
CurrentContext=videoData;
|
||
|
}
|
||
|
else if (!restorePrimaryOnZero && !videoData.OpenGLWin32.HDc && !videoData.OpenGLWin32.HRc)
|
||
|
{
|
||
|
if (!wglMakeCurrent((HDC)0, (HGLRC)0))
|
||
|
{
|
||
|
os::Printer::log("Render Context reset failed.");
|
||
|
return false;
|
||
|
}
|
||
|
CurrentContext = videoData;
|
||
|
}
|
||
|
// set back to main context
|
||
|
else if (!videoData.OpenGLWin32.HWnd && CurrentContext.OpenGLWin32.HDc != PrimaryContext.OpenGLWin32.HDc)
|
||
|
{
|
||
|
if (!wglMakeCurrent((HDC)PrimaryContext.OpenGLWin32.HDc, (HGLRC)PrimaryContext.OpenGLWin32.HRc))
|
||
|
{
|
||
|
os::Printer::log("Render Context switch failed.");
|
||
|
return false;
|
||
|
}
|
||
|
CurrentContext=PrimaryContext;
|
||
|
}
|
||
|
return true;
|
||
|
}
|
||
|
|
||
|
void CWGLManager::destroyContext()
|
||
|
{
|
||
|
if (CurrentContext.OpenGLWin32.HRc)
|
||
|
{
|
||
|
if (!wglMakeCurrent((HDC)CurrentContext.OpenGLWin32.HDc, 0))
|
||
|
os::Printer::log("Release of render context failed.", ELL_WARNING);
|
||
|
|
||
|
if (!wglDeleteContext((HGLRC)CurrentContext.OpenGLWin32.HRc))
|
||
|
os::Printer::log("Deletion of render context failed.", ELL_WARNING);
|
||
|
if (PrimaryContext.OpenGLWin32.HRc==CurrentContext.OpenGLWin32.HRc)
|
||
|
PrimaryContext.OpenGLWin32.HRc=0;
|
||
|
CurrentContext.OpenGLWin32.HRc=0;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
bool CWGLManager::swapBuffers()
|
||
|
{
|
||
|
return SwapBuffers((HDC)CurrentContext.OpenGLWin32.HDc) == TRUE;
|
||
|
}
|
||
|
|
||
|
}
|
||
|
}
|
||
|
|
||
|
#endif
|